Cyclic ADP ribose isomers: Production, chemical structures, and immune signaling.
basic_science · Level V
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- Record sourced from PubMed, PMID 36048923.
- Also identified by DOI 10.1126/science.adc8969 and PMC identifier 13025242.
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Abstract
Cyclic adenosine diphosphate (ADP)-ribose (cADPR) isomers are signaling molecules produced by bacterial and plant Toll/interleukin-1 receptor (TIR) domains via nicotinamide adenine dinucleotide (oxidized form) (NAD<sup>+</sup>) hydrolysis. We show that v-cADPR (2'cADPR) and v2-cADPR (3'cADPR) isomers are cyclized by O-glycosidic bond formation between the ribose moieties in ADPR. Structures of 2'cADPR-producing TIR domains reveal conformational changes that lead to an active assembly that resembles those of Toll-like receptor adaptor TIR domains. Mutagenesis reveals a conserved tryptophan that is essential for cyclization. We show that 3'cADPR is an activator of ThsA effector proteins from the bacterial antiphage defense system termed Thoeris and a suppressor of plant immunity when produced by the effector HopAM1. Collectively, our results reveal the molecular basis of cADPR isomer production and establish 3'cADPR in bacteria as an antiviral and plant immunity-suppressing signaling molecule.
Medical subject headings
- ADP-ribosyl Cyclase
- Adaptor Proteins, Vesicular Transport
- Bacteria
- Bacterial Proteins
- Cyclic ADP-Ribose
- Plant Immunity
- Toll-Like Receptors